Nonlinear-optical processes at streamer discharge in semiconductors

The possibility of light auto-channelling (self-trapping) in conditions of streamer discharge in hexagonal and cubic semiconductors was shown. It is considered the mechanism of discharge in the wide-gap compounds on the basis of representation about the light auto-channelling at streamer excitation,...

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Опубліковано в: :Semiconductor Physics Quantum Electronics & Optoelectronics
Дата:2015
Автори: Rusakov, K.I., Parashchuk, V.V.
Формат: Стаття
Мова:English
Опубліковано: Інститут фізики напівпровідників імені В.Є. Лашкарьова НАН України 2015
Онлайн доступ:https://nasplib.isofts.kiev.ua/handle/123456789/120724
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Назва журналу:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Цитувати:Nonlinear-optical processes at streamer discharge in semiconductors / K.I. Rusakov, V.V. Parashchuk // Semiconductor Physics Quantum Electronics & Optoelectronics. — 2015. — Т. 18, № 1. — С. 36-39. — Бібліогр.: 13 назв. — англ.

Репозитарії

Digital Library of Periodicals of National Academy of Sciences of Ukraine
id nasplib_isofts_kiev_ua-123456789-120724
record_format dspace
spelling Rusakov, K.I.
Parashchuk, V.V.
2017-06-12T18:01:38Z
2017-06-12T18:01:38Z
2015
Nonlinear-optical processes at streamer discharge in semiconductors / K.I. Rusakov, V.V. Parashchuk // Semiconductor Physics Quantum Electronics & Optoelectronics. — 2015. — Т. 18, № 1. — С. 36-39. — Бібліогр.: 13 назв. — англ.
1560-8034
DOI: 10.15407/spqeo18.01.036
PACS 42.65.-k, 52.80.-s
https://nasplib.isofts.kiev.ua/handle/123456789/120724
The possibility of light auto-channelling (self-trapping) in conditions of streamer discharge in hexagonal and cubic semiconductors was shown. It is considered the mechanism of discharge in the wide-gap compounds on the basis of representation about the light auto-channelling at streamer excitation, providing their high propagation velocity down to ~5∙10⁹ cm/s, the crystallographic orientation (directionality), filamentary character at thickness of the channel about 1 μm and absence of the catastrophic destructions of a crystal.
en
Інститут фізики напівпровідників імені В.Є. Лашкарьова НАН України
Semiconductor Physics Quantum Electronics & Optoelectronics
Nonlinear-optical processes at streamer discharge in semiconductors
Article
published earlier
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
collection DSpace DC
title Nonlinear-optical processes at streamer discharge in semiconductors
spellingShingle Nonlinear-optical processes at streamer discharge in semiconductors
Rusakov, K.I.
Parashchuk, V.V.
title_short Nonlinear-optical processes at streamer discharge in semiconductors
title_full Nonlinear-optical processes at streamer discharge in semiconductors
title_fullStr Nonlinear-optical processes at streamer discharge in semiconductors
title_full_unstemmed Nonlinear-optical processes at streamer discharge in semiconductors
title_sort nonlinear-optical processes at streamer discharge in semiconductors
author Rusakov, K.I.
Parashchuk, V.V.
author_facet Rusakov, K.I.
Parashchuk, V.V.
publishDate 2015
language English
container_title Semiconductor Physics Quantum Electronics & Optoelectronics
publisher Інститут фізики напівпровідників імені В.Є. Лашкарьова НАН України
format Article
description The possibility of light auto-channelling (self-trapping) in conditions of streamer discharge in hexagonal and cubic semiconductors was shown. It is considered the mechanism of discharge in the wide-gap compounds on the basis of representation about the light auto-channelling at streamer excitation, providing their high propagation velocity down to ~5∙10⁹ cm/s, the crystallographic orientation (directionality), filamentary character at thickness of the channel about 1 μm and absence of the catastrophic destructions of a crystal.
issn 1560-8034
url https://nasplib.isofts.kiev.ua/handle/123456789/120724
citation_txt Nonlinear-optical processes at streamer discharge in semiconductors / K.I. Rusakov, V.V. Parashchuk // Semiconductor Physics Quantum Electronics & Optoelectronics. — 2015. — Т. 18, № 1. — С. 36-39. — Бібліогр.: 13 назв. — англ.
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